The present invention relates to a feed mechanism used to transport fabrics from a loading end to an unloading end of a sewing machine for sewing, and more particularly, to a sewing machine feed mechanism that internally includes a pressing mechanism configured as an airbag.
A conventional sewing machine feed mechanism, as shown in
As can be more clearly seen in
The conventional sewing machine feed mechanism uses the cylinders 14 and the pressure control system connected thereto to adjust the pressure applied by the pressing units against the fabrics. Each of the cylinders 14 is communicably connected to an air-pressure tube and accordingly, involves relatively complicated mounting and dismounting procedures. Further, in the conventional sewing machine feed mechanism, every pressing unit requires one cylinder 14. Therefore, a large number of cylinders and air-pressure tubes are included in the feed mechanism to inevitably increase the manufacturing cost of the feed mechanism.
In view of the above disadvantages of the conventional sewing machine feed mechanism, it is desirable to develop an improved sewing machine feed mechanism that has simplified structure and reduced manufacturing cost, allows convenient mounting or dismounting thereof, and applies even pressure against the transported fabrics.
A primary object of the present invention is to provide a sewing machine feed mechanism that includes an airbag to apply even pressure against fabrics to be sewn. Further, with the airbag, the sewing machine feed mechanism can have simplified structure and can be easily and effortlessly mounted and dismounted to reduce the manufacturing cost thereof.
To achieve the above and other objects, the sewing machine feed mechanism according to the present invention is mounted on a work table of a sewing machine, and includes a feed belt defining an encircled space; two belt wheels on which two opposite ends of the feed belt are mounted; and a driving source for driving the two belt wheels and the feed belt to rotate synchronously, so as to feed fabrics placed between the work table and the feed belt into a stitch forming area of the sewing machine for sewing.
The sewing machine feed mechanism according to the present invention is characterized in further including a plurality of pressing elements located in the encircled space with respective bottom in contact with the feed belt, an airbag located atop the pressing elements and connected to an external control device capable of regulating an internal pressure of the airbag, and a hold-down plate located atop the airbag, such that the airbag in an inflated state can only generate a downward deforming force against the pressing elements. The pressing elements are respectively a pressure-bearing roller unit, which is automatically adjustable in its positional height in the encircled space. The pressure-bearing roller units respectively include at least one roller, which is mounted to between two side frames with two opposite ends of the roller connected to two locating brackets that are located outside the two side frames. And, a flexible supporting plate is further provided between the airbag and the pressure-bearing roller units.
The feed belt, the belt wheels, the pressing elements and the airbag are mounted to between the two side frames. The side frames are respectively provided with a plurality of mounting holes at positions corresponding to the rollers of the pressure-bearing roller units, and a plurality of locating holes located above and corresponding to the mounting holes. And, the locating brackets respectively include a connection section located outside the side frames and a plurality of spaced lug sections extended from the connection section for passing through the locating holes on the side frames.
The present invention is characterized in using an airbag to replace the cylinders in the conventional sewing machine feed mechanism, and providing a flexible supporting plate between the airbag and the pressing elements. With these arrangements, the sewing machine feed mechanism according to the present invention has effectively reduced manufacturing cost and can be conveniently mounted and dismounted to indirectly save a lot of labor cost, and can apply even pressure against the transported fabrics.
The structure and the technical means adopted by the present invention to achieve the above and other objects can be best understood by referring to the following detailed description of the preferred embodiments and the accompanying drawings, wherein
The present invention will now be described with a preferred embodiment thereof and with reference to the accompanying drawings. For the purpose of conciseness, the present invention is also briefly referred to as the feed mechanism and generally denoted by reference numeral 2 herein.
Please refer to
Please refer to
Since the first feed assembly 22 and the second feed mechanism 23 have an identical internal structure and are different from each other only in their lengths, in this specification, only the first feed assembly 22 is described in detail. Description of the second feed assembly 23 is omitted herein.
Please refer to
Please refer to
The airbag 228 is provided with a valve 228a, which is in fluid communication with an air-pressure control device (not shown) located outside the feed mechanism 2. An internal pressure of the airbag 228 can be regulated via the air-pressure control device. The hold-down plate 229 is fixedly connected to the pair of side frames 221. When the airbag 228 is inflated and changes in volume, the hold-down plate 229 restricts the airbag 228 from expanding upward. That is, the airbag 228 can only expand downward and accordingly deforms the flexible supporting plate 227 located below the airbag 228. Meanwhile, the deformed supporting plate 227 generates a downward force against the pressing elements 226.
As can be seen from
In the illustrated embodiment, the pressure-bearing roller unit includes two spaced rollers 226a, which respectively have an axially extended central through hole 226b and are in contact at a bottom with the feed belt 224. The side frames 221 are respectively provided at positions corresponding to the rollers 226a with a plurality of mounting holes 221a, and at positions immediately above the mounting holes 221a with a plurality of locating holes 221b. Further, the locating brackets 25 respectively include a connection section 251, which is located outside the side frames 221, and two laterally spaced lug sections 252 for correspondingly extending into two locating holes 221b. Further, every connection section 251 is provided near two opposite ends with two fastening holes 253, which are located corresponding to the central through holes 226b of the rollers 226a.
To assemble the feed mechanism 2 of the present invention, screws 26 are separately extended through the fastening holes 253 on the locating brackets 25 that are located outside one of the two side frames 221. Then, the screws 26 sequentially pass through the mounting holes 221a on the side frame 221, the central through holes 226b of the rollers 226a, and the mounting holes 221a on the other side frame 221 to respectively expose a partial threaded length from the fastening holes 253 on the locating brackets 25 that are located outside the other side frame 221. Finally, nuts 27 are separately tightened to the exposed threaded lengths of the screws 26, so that the locating brackets 25, the side frames 221 and the pressing elements 226 are coupled to one another. The locating holes 221b on the side frames 221 are rectangular openings that provide spaces for the lug sections 252 of the locating brackets 25 to be movably set therein, such that the lug sections 252 set in the locating holes 221b together form a support means in the encircled space 225 to support the flexible supporting plate 227 thereon.
Please refer to
The present invention has been described with a preferred embodiment thereof and it is understood that many changes and modifications in the described embodiment can be carried out without departing from the scope and the spirit of the invention that is intended to be limited only by the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
102130162 A | Aug 2013 | TW | national |
Number | Name | Date | Kind |
---|---|---|---|
2241230 | Wilmoth | May 1941 | A |
3800719 | Rockerath | Apr 1974 | A |
4432295 | Raisin et al. | Feb 1984 | A |
4457243 | Bowditch | Jul 1984 | A |
4462530 | Block et al. | Jul 1984 | A |
4512269 | Bowditch | Apr 1985 | A |
4632046 | Barrett et al. | Dec 1986 | A |
4719864 | Barrett et al. | Jan 1988 | A |
4922842 | Adamski et al. | May 1990 | A |
4972787 | Adamski et al. | Nov 1990 | A |
5018416 | Freermann | May 1991 | A |
5129171 | Arbter et al. | Jul 1992 | A |
5410975 | Dudek et al. | May 1995 | A |
5461999 | Marcangelo | Oct 1995 | A |
5505406 | Summey, III | Apr 1996 | A |
5579708 | Kambara et al. | Dec 1996 | A |
6095070 | Sahl | Aug 2000 | A |
6123039 | Niino | Sep 2000 | A |